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Representation of General capabilities Geography

The general capabilities encompass the knowledge, skills, behaviours and dispositions that, together with the Geography curriculum content and the cross-curriculum priorities, will help students to live and work successfully in the twenty-first century. The …

Representation of General capabilities | Geography | Humanities and Social Sciences | Senior secondary curriculum

Structure of Ancient History Ancient History

Units In Ancient History, students study the key institutions, structures and features of ancient societies and develop a broader and deeper comprehension of the origins, impact and legacy of ideas, beliefs and values of the ancient world. The Ancient …

Structure of Ancient History | Ancient History | Humanities and Social Sciences | Senior secondary curriculum

Structure of Modern History Modern History

Units In Modern History, students study the forces that have shaped the modern world and develop a broader and deeper comprehension of the world in which they live. The Modern History curriculum consists of four units. For each unit there are five to …

Structure of Modern History | Modern History | Humanities and Social Sciences | Senior secondary curriculum

ACMSM050

model periodic motion using sine and cosine functions and understand the relevance of the period and amplitude of these functions in the model.

ACMSM050 | Content Descriptions | Unit 2 | Specialist Mathematics | Mathematics | Senior secondary curriculum

ACMMM020

recognise features of the graphs of \(x^2+y^2=r^2\) and \(\left(x-a\right)^2+\left(y-b\right)^2=r^2\), including their circular shapes, their centres and their radii

ACMMM020 | Content Descriptions | Unit 1 | Mathematical Methods | Mathematics | Senior secondary curriculum

ACMSM121

integrate expressions of the form \(\frac{\pm1}{\sqrt[{}]{a^2-x^2}}\) and \(\frac a{a^2+x^2}\)

ACMSM121 | Content Descriptions | Unit 4 | Specialist Mathematics | Mathematics | Senior secondary curriculum

ACMEM174

use technology and a recurrence relation to model a reducing balance loan

ACMEM174 | Content Descriptions | Unit 4 | Essential Mathematics | Mathematics | Senior secondary curriculum

ACMGM057

model a linear relationship by fitting a least-squares line to the data

ACMGM057 | Content Descriptions | Unit 3 | General Mathematics | Mathematics | Senior secondary curriculum

ACMGM058

use a residual plot to assess the appropriateness of fitting a linear model to the data

ACMGM058 | Content Descriptions | Unit 3 | General Mathematics | Mathematics | Senior secondary curriculum

ACMMM143

use a Bernoulli random variable as a model for two-outcome situations

ACMMM143 | Content Descriptions | Unit 3 | Mathematical Methods | Mathematics | Senior secondary curriculum

ACMSM063

prove irrationality by contradiction for numbers such as \(\sqrt[{}]2\) and \(\log_25\)

ACMSM063 | Content Descriptions | Unit 2 | Specialist Mathematics | Mathematics | Senior secondary curriculum

ACSPH076

A wave model explains a wide range of light-related phenomena including reflection, refraction, total internal reflection, dispersion, diffraction and interference; a transverse wave model is required to explain polarisation

ACSPH076 | Content Descriptions | Unit 2 | Physics | Science | Senior secondary curriculum

ACMGM042

interpret, in context, the slope and intercept of a straight-line graph used to model and analyse a practical situation

ACMGM042 | Content Descriptions | Unit 2 | General Mathematics | Mathematics | Senior secondary curriculum

ACMGM092

fit a least-squares line to model long-term trends in time series data.

ACMGM092 | Content Descriptions | Unit 4 | General Mathematics | Mathematics | Senior secondary curriculum

ACMMM138

recognise uniform discrete random variables and use them to model random phenomena with equally likely outcomes

ACMMM138 | Content Descriptions | Unit 3 | Mathematical Methods | Mathematics | Senior secondary curriculum

ACMMM146

use Bernoulli random variables and associated probabilities to model data and solve practical problems. 

ACMMM146 | Content Descriptions | Unit 3 | Mathematical Methods | Mathematics | Senior secondary curriculum

ACSPH017

The kinetic particle model describes matter as consisting of particles in constant motion, except at absolute zero

ACSPH017 | Content Descriptions | Unit 1 | Physics | Science | Senior secondary curriculum

ACSPH071

The mechanical wave model can be used to explain phenomena related to reflection and refraction (for example, echoes, seismic phenomena)

ACSPH071 | Content Descriptions | Unit 2 | Physics | Science | Senior secondary curriculum

ACSPH075

A ray model of light may be used to describe reflection, refraction and image formation from lenses and mirrors

ACSPH075 | Content Descriptions | Unit 2 | Physics | Science | Senior secondary curriculum

ACSPH146

High-energy particle accelerators are used to test theories of particle physics including the Standard Model

ACSPH146 | Content Descriptions | Unit 4 | Physics | Science | Senior secondary curriculum

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